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首页> 外文期刊>Journal of Lightwave Technology >High-Bandwidth Tracking Method of Resonant Frequency for Sensing Resonators
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High-Bandwidth Tracking Method of Resonant Frequency for Sensing Resonators

机译:谐振器谐振频率的高带宽跟踪方法

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摘要

A novel high-bandwidth tracking system with double closed-loop control is proposed to track the low and high-frequency components of the resonant frequency of sensing resonators. To overcome the low intrinsic bandwidth of lasers, the low-frequency and large range change of the resonant frequency is tracked by adjusting the frequency of the laser. Simultaneously, the rapid and small range fluctuation of the resonant frequency is tracked in real time using an optical single-sideband (OSSB) modulator. The closed-loop error model of resonant frequency tracking is then analyzed and separated into low-frequency and high-frequency signals in the dual tracking system. To achieve high-bandwidth tracking of the resonant frequency, the controllers of the low-frequency and high-frequency control loops are designed to adjust the frequency of the laser and the frequency-shift of the OSSB modulator, respectively. The experimental results indicate that the dual tracking system of the resonant frequency for the sensing resonator has a fast rise time of less than 12 mu s and a wide bandwidth of up to 100 kHz, which validate the high dynamic performance of our proposed method.
机译:提出了一种具有双闭环控制的新型高带宽跟踪系统,以跟踪感测谐振器的谐振频率的低频和高频分量。为了克服激光器的低固有带宽,通过调节激光器的频率来跟踪谐振频率的低频和大范围变化。同时,使用光学单边带(OSSB)调制器实时跟踪谐振频率的快速和小范围波动。然后分析了谐振频率跟踪的闭环误差模型,并在双跟踪系统中将其分为低频和高频信号。为了实现谐振频率的高带宽跟踪,低频和高频控制环路的控制器设计为分别调整激光器的频率和OSSB调制器的频移。实验结果表明,用于感测谐振器的谐振频率的双跟踪系统具有小于12 s s的快速上升时间和高达100 kHz的宽带宽,这证明了我们所提出方法的高动态性能。

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